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A model for the structured description of healthcare activities and related data.

Rehabilitation involves long-term, interdisciplinary processes. A model was developed, for the structured description of typical healthcare activities. Telematic services based on this model can support accurate data acquisition and communication among healthcare teams. Presentation of data within their context and according to the specific user's view is envisaged, based on deviations from the typical behaviours. Benefits are also expected in better understanding of the care processes themselves, easier comparison of different approaches, and diffusion of consensus-based knowledge.

Data Collection↗

Computerized guidelines for preventative care in general practice.

Computer-based guidelines for preventative care is an example of the way in which protocols can be put to use in an effective and useful way. However, computerised medical protocols will only be used on a large scale if they are integrated with the computer-based medical record. The AIM-project ISAAC is working on the development of integrated tools for use in Primary Health Care, and especially General Practice. One of the tools under development is prevention. In this article, prevention is used as an example of the implementation of protocols. After a short definition of prevention, the implementation of preventative modules (or protocols) in the ISAAC GP information system is discussed. There are several conditions or critical factors if the implementation of prevention (and protocols) in a GP information system and in a GP practice is to be successful. In the discussion, some of the opportunities that are emerging with the use of information systems and telematics in primary health care are also discussed, together with the potential of ISAAC and the crucial role that must be played by healthcare providers.

Europe↗

Computerized assessment with primary care guidelines in The Netherlands.

To promote quality assurance and expertise in primary health care in the Netherlands the Dutch College of General Practitioners develops protocols, called standards. These standards concern medical action-taking in case of regular complaints and diseases in common practice. To improve dissemination of the standards and to develop effective and useful methods for quality assurance on the basis of the standards a project, called the Guidelines Automation Project (Richtlijnen Automatiseringsproject) was started to develop a computer program that can support quality assurance of medical action-taking in general practice on the basis of the NHG-standards. The main feature of the program is educational assessment. Other features of the program are: guidance for case data collection, stating of differential diagnoses, and disease profiles. These features also use patient case data as a starting point. In conclusion it is argued that all efforts towards an "electronic' use of protocols in the health care delivery system will fail, unless we arrive at a care record that both with respect to its structure and to its content, is being founded on sound formal principles. Several problems need to be solved first. The implementation, and exploitation of protocols, though relatively simple from a knowledge representation point of view, is not a straightforward task.

Family Practice↗

Investigation of syntaxes for existing interchange formats to be used in healthcare.

This paper gives a summary of the work done by CEN TC 251 PT 004. The project team objective has been to investigate syntaxes of existing interchange formats (IFs) to be used in healthcare. A set of evaluation criteria have been developed based on functional requirements from two healthcare domains. 5 IFs; ASN.1, ASTM E1238, EDIFACT, Euclides and ODA have been evaluated. ASN.1 scores highest in the evaluation. However mapping from General Message Models (GMDs) to IF dependent message models (IFMDs) shows that all the IFs can be used. The project team recommends a strategy for development of GMDs, IFs and IFMDs.

Computer Communication Networks↗

Medical EDI message specification and interchange formats.

Assessment of the current medical edi environment learns that "old" interchange formats are being used to represent information of highly complex and quickly evolving nature. Whenever the domain requirements are translated into acceptable messages according to these interchange format specifications, system developers use the latest technologies to implement the messages towards the distorted view imposed by the interchange format constraints. This situation, combined with the fact of coexistence of several interchange formats and the urgent need for more standardised message types, led to the specification of a new meta-syntax, supporting easy message definition and allowing the data-driven conversion between multiple interchange formats. As such, and supported by the development of interchange format independent message descriptions, it may become a tool to support the medical edi needs of the future.

Artificial Intelligence↗

Multi media and broadband communication services: a new paradigm for medical imaging.

This paper is attempting given a summery of the major building blocks and driving forces in the developments of medical informatics and medical imaging in special. The role of multi-media and broadband communication will be described. The paper should give an indication where the author sees medical imaging in the world of informatics, focusing from R&D to product developments, with emphases on standards and prototyping. The author will also define the molecule and atoms of medical informatics and medical imaging. The architecture of the CEN TC 251/4 draft standard will be described in relation to the general objectives of CEN TC 251.

Computer Communication Networks↗

Standard interchange for computerized electrocardiography.

In the SCP-ECG project (AIM #1015) of the pilot AIM Programme a standard communications protocol was developed for computerized electrocardiography, consisting of standards for the interchange, encoding and storage of digital ECG data. Part of this work is continued under the main AIM Programme (January 1992- December 1994) as AIM Project #2026, entitled "Open European Data Interchange and Processing for Computerized Electrocardiography (OEDIPE)" and was taken up by the CEN/TC 251 Committee as a priority item, for implementation into an official European Standard in Health Care Informatics. The objectives and implementation of this Standard are described in the present paper.

Electrocardiography↗

Standards of medical informatics in Japan.

Standardization activities related to medical informatics in Japan are briefly introduced in this paper. Because two kinds of portable media that are MODs (Magneto Optical Disk) and IC cards are supposed to be practically used in medicine, standardization works are currently supported by Japanese government. With an introduction of the organizations their standards and policy are explained.

Computer Systems↗

A proposed standard for registration of coding schemes.

This paper describes a proposed European standard for the Registration of Coding Schemes used in electronic healthcare information exchange. The requirements for such a standard are outlined together with the manner in which the work to meet these requirements has been carried out. The paper includes a summary of the main points contained in the proposed standard and in the supporting documents delivered by the project team. The paper concludes with a report on the progress of this proposal towards acceptance as a standard and a brief comment on how it may influence other work in medical informatics standardisation.

Electronic Data Processing↗

Where does informatics fit in health care organizations?

Why is medical informatics important to health care leaders? As an emerging science, informatics focuses on applying computing and communication technology to decision making for clinicians and managers. It enhances the understanding of how information and communication systems can impact the work health care managers must accomplish. As the cost of technology for digital information management continues to decline, organizations and individuals will look for ways to offset the human costs of managing and conveying information. The way of the paper medical record is being replaced by the less expensive and more efficient digital information systems. Leaders of health care organizations need to look for every opportunity to deploy networks and computers to reduce the labor costs of data collection, storage, retrieval, and analysis.

Computer Communication Networks↗